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Biomedical subjects

A Pestronk

Publications and source records attributed to A Pestronk.

At least 19 recordsLinked to original sources

Multiple mitochondrial DNA deletions in sporadic inclusion body myositis: a study of 56 patients.

Inclusion body myositis, a chronic inflammatory disorder, is the most common cause of myopathy in adults over the age of 50. Diagnosis is based on clinical features and distinctive morphological findings by both light and electron microscopy. The causes of inclusion body myositis are still unknown. Ultrastructural mitochondrial changes and ragged-red fibers are common in patients with sporadic inclusion body myositis, and multiple [correction of mutiple] mitochondrial DNA (mtDNA) deletions have been reported in 3 such patients, suggesting that mtDNA mutations may have a pathogenetic role. We studied 56 patients with sporadic inclusion body myositis, using a combination of clinical, morphological, biochemical, and molecular genetic analyses to determine the frequency and the distribution of mtDNA deletions. Using the polymerase chain reaction, we found multiple mtDNA deletions in 73% of patients, compared to 40% of normal age-matched control subjects and 47% of disease control subjects. The presence of deletions correlated with morphological evidence of ragged-red, cytochrome c oxidase-negative fibers, and with defects of complexes I and IV of the electron transport chain. Although aging may account for a proportion of mtDNA deletions in patients with sporadic inclusion body myositis and control subjects, mtDNA alterations may be accelerated in sporadic inclusion body myositis.

Adult

Congenital muscular dystrophy syndromes distinguished by alkaline and acid phosphatase, merosin, and dystrophin staining.

Congenital muscular dystrophy syndromes are characterized by congenital weakness, contractures, and dystrophic features on muscle biopsy. However, these syndromes are often difficult to diagnose precisely because their clinical and pathologic characteristics are not specific and resemble changes in other myopathies. We examined muscle biopsies from 20 children with a congenital muscular dystrophy syndrome. Disease controls with dystrophies or other myopathies (n=19) and normal individuals (n=15) were studied for comparison. In each biopsy we determined (1) numbers of muscle fibers with alkaline phosphatase (AlkP) staining, (2) numbers of acid phosphatase-(AcP) positive cells, (3) dystrophin levels by immunocytochemistry, and (4) the distribution of merosin and laminin-A staining. A ratio of AcP:AlkP staining was calculated for each biopsy. In nine patients with congenital muscular dystrophy (younger than 4 years of age) with normal dystrophin, the AcP:AlkP ratio was low (0.09 +/- 0.03). In contrast, in Duchenne muscular dystrophy, the AcP:AlkP ratio was 15 times higher (1.6 +/- 0.04, p=0.001). The three children with congetial muscular dystrophy syndromes and reduced dystrophin and one child with facioscapulohumeral dystrophy had AcP:AlkP ratios in the range of Duchenne muscular dystrophy patients (2.4 +/- 1.4). Low Ac:AlkP ratios were related to relative absence of AcP-positive cells. Merosin staining was absent in 5 of the 17 congenital muscular dystrophy biopsies tested. None of the 5 children with merosin-negative but all 12 with merosin-positive stains walked (p=0.0002). We conclude that a pattern of few AcP-positive cells in the setting of numerous AlkP staining muscle fibers has specificity for congenital muscular dystrophy syndromes and provides histopathologic support for the diagnosis. Reduced merosin in muscle predicts more severe weakness and long-term disability.

Acid Phosphatase

Childhood chronic inflammatory demyelinating neuropathies: clinical course and long-term follow-up.

Chronic inflammatory demyelinating neuropathy (CIDP) is a rare disease in childhood. We reviewed the clinical characteristics, response to therapy, and long-term prognosis in 13 children (1.5 to 16 years of age) diagnosed with CIDP at Washington University Medical Center, St. Louis, and the Royal Children's Hospital, Melbourne, Australia, between 1979 and 1994. The most common presenting symptom (in 11/13 [85%]) was lower extremity weakness associated with difficulty in walking. Preceding events within 1 months of onset, mostly intercurrent infections or vaccinations, occurred in seven children (54%). The disease was monophasic in three children (23%). One relapse occurred in four (30%) and multiple relapses in six (46%). All patients had at least short-term response to steroids. Three children (23%) recovered completely during the first year. Ten children (77%) had residual weakness after an average follow-up of 6 years. There seems to be two populations of children with CIDP. One subgroup, with a favorable prognosis, progressed to peak disability over less than 3 months; these children often have a monophasic course with complete resolution of symptoms and signs and withdrawal from all medications by 1 year after onset. A second subgroup progressed for 3 months or longer; these children all required substantial does of prednisone for prolonged periods and had considerable long-term morbidity with persistent weakness.

Adolescent

Myopathy and paraproteinemia with serum IgM binding to a high-molecular-weight muscle fiber surface protein.

We evaluated a 69-year-old man with Waldenström's macroglobulinemia (IgM-kappa M-protein) and progressive weakness over 2 to 3 years. The neurological examination showed symmetrical, predominantly proximal weakness. Electrophysiological testing revealed small brief motor unit potentials with fibrillations and positive sharp waves consistent with an irritative myopathy. The muscle biopsy specimen showed myopathic changes including variation in fiber size and increased connective tissue but no inflammation. IgM-kappa but not IgM-lambda was deposited along the surface of muscle fiber membranes. Serum IgM-kappa but not IgM-lambda from the patient stained the surface of normal human muscle fibers but not other regions of muscle fibers or other tissues. The serum IgM-kappa at dilutions up to 1:512,000 bound to a high-molecular-weight muscle protein by Western and dot blot studies. By enzyme-linked immunosorbent assay and Western blot analysis, serum IgM-kappa bound specifically to the muscle protein and not to other muscle or neural antigens, including GM1 ganglioside, myelin-associated glycoprotein, and sulfatide. We conclude that the myopathy in our patient is probably related to the presence of serum IgM-kappa antibodies directed against a muscle surface antigen. Characterization of the target antigen, a high-molecular-weight protein located specifically in muscle, should further elucidate the pathogenesis of this presumably humorally mediated immune myopathy.

Aged

Anti-MAG antibody-associated polyneuropathies: improvement following immunotherapy with monthly plasma exchange and IV cyclophosphamide.

Treatment outcomes of sensory-motor polyneuropathies associated with anti-myelin-associated glycoprotein (MAG) antibodies have varied even with relatively intensive immunosuppression. We used plasma exchange and cyclophosphamide to treat four patients with anti-MAG antibody-associated polyneuropathies whose symptoms had progressed in the preceding year. Treatment courses consisted of five to seven monthly regimens of plasma exchange on 2 consecutive days followed by intravenous cyclophosphamide (1 g/m2). Effects of treatment were quantitatively measured with hand-held dynamometry. All four patients showed improvement in both strength and sensation in the 5 to 24 months after treatment. We conclude that selected patients with sensory-motor polyneuropathies associated with high-titer serum IgM autoantibodies against MAG may have quantitative and useful functional improvement after immunotherapy. The improvement continues after completion of treatment and may persist for 1 to 2 years or longer.

Antibodies

Anti-rhodopsin antibodies in sera from patients with normal-pressure glaucoma.

PURPOSE: To explore further the potential role autoimmunity may play in the pathogenesis of normal-pressure glaucoma (NPG) in some patients, the authors examined the sera of patients with NPG for the presence of antibodies directed toward retinal antigens. METHODS: Using patient sera, immunoblotting was performed on subcellular fractions of retina, purified bovine rhodopsin, and immunoaffinity-purified recombinant human rhodopsin. A chemiluminescence-enzyme-linked immunosorbent assay (ELISA) to detect anti-rhodopsin antibodies was developed and used. RESULTS: A patient with NPG was found to have a high titer of immunoglobulin M-lambda antibody against a 40-kd retina-specific glycoprotein antigen subsequently identified as rhodopsin. ELISA analysis conducted on sera from 28 patients with NPG and 26 patients with primary open-angle glaucoma (POAG) revealed highly significant differences in anti-rhodopsin antibody activity between these groups (P < 0.0002, Mann-Whitney test). For example, the majority of patients with NPG (19/28; 68%) had anti-rhodopsin antibody activity higher than the highest value obtained from among 26 age-matched patients with POAG. CONCLUSIONS: An elevated anti-rhodopsin antibody count is related to NPG. This may indicate that there is an autoimmune component in the optic neuropathy in these patients. The specific role of these autoantibodies, if any, in the pathogenesis of the disease remains to be determined.

Aged

Chronic motor neuropathies and lower motor neurone syndromes.

Immune-mediated motor neuropathies are most often disorders manifest clinically by slowly progressive, asymmetrical, distal weakness, starting in the hands more often than the legs. In some cases, electrophysiological findings show multifocal conduction block along the length of motor axons. Other patients have findings consistent with only axonal loss. Laboratory testing is unremarkable except for high-titre serum autoantibodies to GM1 and other neural antigens. Diagnosis of immune-mediated motor neuropathies provides an opportunity for effective immunomodulating therapy that can significantly improve quality of life in affected patients. The identification of antigenic targets of serum autoantibodies in patients with motor neuropathies lends hope that immunotherapies to specifically treat the autoimmune disorder can be developed.

Autoantibodies

Increased incidence of paraproteinemia and autoantibodies in patients with normal-pressure glaucoma.

We assessed the incidence of paraproteins and autoantibodies in 44 patients (mean age, 65.3 +/- 1.9 years) with normal-pressure glaucoma and 41 patients (mean age, 68.8 +/- 1.8 years) monoclonal proteins occurred more often (P = .0047) in patients with normal-pressure glaucoma (eight of 44, 18%) than in control subjects with primary open-angle glaucoma (zero of 41, 0%). Autoantibodies to extractable nuclear antigens, most often Sjögren's syndrome A antigen (SSA[Ro]), were also found more frequently (P = .0022) in patients with normal-pressure glaucoma (13 of 44, 30%) than in control subjects (one of 41, 2%). Paraproteins and autoantibodies to extractable nuclear antigens generally occurred in different patients with an overall incidence of 20 of 44 (45%) patients with normal-pressure glaucoma. In contrast, no significant difference in the incidence of antinuclear antibodies existed between the groups. These findings suggest that humoral immune mechanisms may have a role in the pathogenesis of optic neuropathy in patients with normal-pressure glaucoma.

Adult

Trial of immunosuppression in amyotrophic lateral sclerosis using total lymphoid irradiation.

Although the cause of amyotrophic lateral sclerosis (ALS) remains unknown, recent studies have suggested an autoimmune mechanism of pathogenesis. Previous trials of immunosuppressive treatment have yielded inconclusive results. Our study was designed to determine whether more powerful and prolonged immunosuppression, produced by total lymphoid irradiation (TLI), would alter the course of ALS. In a double-blind, randomized, placebo-controlled study, 30 patients with classic ALS were treated with TLI, and 31 were given sham radiation. Quantitative measurements of muscle strength, functional motor activity, and humoral and cellular immune status were followed for 2 years, or until death or respirator dependence. Motor function in the TLI-treated and control groups showed no significant differences throughout the study. Overall survival was not significantly different in the TLI-treated and control groups. TLI effectively suppressed cellular and humoral immune function throughout the 2-year study period. Analysis of the relationship between immunosuppression and motor functions showed no consistent effect of treatment. We conclude that powerful and prolonged immunosuppression produced by TLI did not benefit patients with ALS. This fails to support the concept of an autoimmune mechanism of pathogenesis of ALS.

Amyotrophic Lateral Sclerosis

The clinical correlates of high-titer IgG anti-GM1 antibodies.

Serum IgG anti-GM1 antibodies have been reported to occur in a variety of disorders, including Guillain-Barré syndrome and chronic polyneuropathies. Of over 5,000 serums tested in our laboratory, high titers of selective IgG anti-GM1 antibodies (> 1:1,000) and without binding to sulfatide were found in 35 patients. Clinical correlation revealed that almost all patients had axonal, motor neuropathies. One subgroup was comprised of individuals with an acute motor neuropathy, described either as an acute axonal Guillain-Barré-like syndrome that was occasionally associated with a prodrome of Campylobacter jejuni enteritis or as Chinese paralysis syndrome. A second group of patients had chronic asymmetric lower motor neuron (LMN) syndromes with no conduction block or other evidence of demyelination. The presence of selective high-titer IgG anti-GM1 antibody reactivity in serum is uncommon but when present is strongly associated with acute axonal motor neuropathies or chronic asymmetric LMN syndromes.

Antibodies

Rapidly evolving myopathy with myosin-deficient muscle fibers.

Five patients with rapidly evolving, severe weakness had an unusual myopathy with virtually complete loss of myosin in 5 to 40% of muscle fibers. Three of the 5 patients began to develop weakness 1 to 2 weeks after lung transplantation. The fourth became weak after a febrile illness. The fifth presented with diabetic ketoacidosis and weakness. All patients had received corticosteroid therapy. In all cases the weakness was progressive and led to severe disability, with respiratory failure in 4 patients. Initial diagnostic testing did not localize an underlying cause for the weakness. Creatine kinase was normal or minimally elevated. Electromyography generally showed mildly myopathic or nondiagnostic changes. However, muscle biopsy revealed numerous small angular fibers with no myosin ATPase staining at any pH. Immunocytochemical staining and ultrastructural studies confirmed a severe loss of myosin in many fibers. This rapidly evolving myopathy with myosin-deficient muscle fibers appears to be different clinically and pathologically from previously described syndromes involving rapidly progressive weakness. Slow recovery over a period of months is the most common outcome.

Adult

The clinical and diagnostic role of anti-GM1 antibody testing.

There is increasing evidence that multifocal motor neuropathy (MMN) and some lower motor neuron (LMN) syndromes are immune-mediated and treatable. The frequent occurrence of high titers of anti-GM1 antibodies in these motor neuropathies raised hopes that serum testing would provide useful diagnostic information. Unfortunately, in routine practice, simple quantification of IgM binding to GM1 ganglioside has proved to be a test with poor sensitivity and specificity. We have found that much greater sensitivity and specificity for MMN and LMN syndromes can be obtained by determining serum antibody binding to panels of antigens, such as GM1, histone H3, and NP-9. These results suggest that combined measurement of serum antibody binding to GM1 and other antigens can provide tests that are useful in the diagnosis and management of motor neuropathy syndromes.

Antibodies

Treatable gait disorder and polyneuropathy associated with high titer serum IgM binding to antigens that copurify with myelin-associated glycoprotein.

We studied clinical and electrodiagnostic features of 9 patients with very high titers (> 1:10,000) of serum IgM binding to a CNS myelin antigen (CMA) preparation that copurified with myelin-associated glycoprotein (MAG). We found that 8 of the 9 patients had a combined syndrome of gait ataxia and polyneuropathy (GAPN) with late-age onset (mean = 70 years of age). In the 8 GAPN patients progressive difficulty with ambulation led to significant functional disability and frequent falling. Examination showed a wide-based unsteady gait, especially when standing still or turning. There was mild-to-moderate distal sensory loss with involvement of joint position sense only in the toes. Motor changes, when present, were mild and mainly involved distal leg musculature. Treatment of 5 GAPN patients resulted in clear improvement of 2 after intravenous human immunoglobulin and of 3 others after other immunodulating agents. Immune-mediated GAPN syndromes with high titers of serum IgM binding to CMA appear to be treatable causes of gait disorders in older patients.

Aged

Chronic immune demyelinating neuropathies.

The classification of immune-mediated demyelinating polyneuropathies has become more complex in recent years. Initial definitions of chronic inflammatory demyelinating polyneuropathy (CIDP) were often broad enough to include almost any acquired polyneuropathy with demyelinating features. However, subdivision of acquired demyelinating polyneuropathies into different categories seems justified because 1) several distinct clinical syndromes have been identified, 2) characteristic and distinctive patterns of serum antibody binding are associated with each specific clinical syndrome and, 3) the syndromes respond differently to immune modulating treatments (Table 1). Larger series and controlled trials will be necessary to determine the therapeutic regimens that optimize the benefit:risk considerations for patients with these syndromes.

Autoantibodies

Distal lower motor neuron syndrome with high-titer serum IgM anti-GM1 antibodies: improvement following immunotherapy with monthly plasma exchange and intravenous cyclophosphamide.

Motor neuropathies associated with electrodiagnostic evidence of motor conduction block often improve after treatment with immunotherapy, but there is less evidence about the responsiveness of lower motor neuron (LMN) syndromes without conduction block. In this study we treated four patients with an asymmetric, predominantly distal LMN syndrome associated with high serum titers of IgM anti-GM1 ganglioside antibodies but without conduction block on electrodiagnostic testing. Treatment courses consisted of five to seven repeated monthly regimens of plasma exchange on 2 consecutive days followed, on day 3, by intravenous cyclophosphamide (1 g/m2). The results of treatment were quantitatively measured using hand-held dynamometry. We found that all four patients showed progressive improvement in strength over the 6 to 24 months following treatment. Improvement was documented by both objective muscle testing and patient reports of increased strength and less fatigability. We conclude that immunotherapy may be followed by useful functional benefit in selected patients with an asymmetric, predominantly distal LMN syndrome associated with high serum titers of IgM anti-GM1 antibodies. Gradual improvement often begins as late as 6 to 9 months after the onset of treatment and may persist for 1 to 2 years, or longer, after immunosuppressive treatment is stopped.

Adult

Anti-MAG antibodies: major effects of antigen purity and antibody cross-reactivity on ELISA results and clinical correlation.

There is controversy regarding the relationship of polyneuropathy syndromes to the presence of serum antibody binding to myelin-associated glycoprotein (MAG). Using standard ELISA methodology, we identified 74 sera that appeared to have high titers of IgM binding to MAG and found that only 34% of these sera stained MAG using Western blot methodology. Follow-up studies showed that two factors greatly influence concordance between ELISA and Western blot testing for anti-MAG antibodies. Sera with high titers of binding to both MAG and histone H3 identified by ELISA rarely stain MAG on Western blot. In addition, sera analyzed by ELISA often bind to impurities in the semipure MAG that is frequently used in ELISA assays. Further purifications to separate MAG from other contaminants improved concordance between ELISA and Western blot results to 85% to 90% in a retrospective analysis, as well as in a prospective study of 49 additional sera. Patients with a polyneuropathy and serum IgM binding to MAG preparations by ELISA but not by Western blot methodology had several different clinical syndromes, including gait disorders and asymmetric motor neuropathies. Patients with IgM binding to MAG by both assay methods usually had a distal, sensory-motor, symmetric polyneuropathy with some features of demyelination on electrodiagnostic testing.

Adult